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Thermal Radiation Heat Transfer

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TLDR
In this paper, a comprehensive discussion of heat transfer by thermal radiation is presented, including the radiative behavior of materials, radiation between surfaces, and gas radiation, and the use of the Monte Carlo technique in solving radiant exchange problems and problems of radiative transfer through absorbing-emitting media.
Abstract
A comprehensive discussion of heat transfer by thermal radiation is presented, including the radiative behavior of materials, radiation between surfaces, and gas radiation. Among the topics considered are property prediction by electromagnetic theory, the observed properties of solid materials, radiation in the presence of other modes of energy transfer, the equations of transfer for an absorbing-emitting gas, and radiative transfer in scattering and absorbing media. Also considered are radiation exchange between black isothermal surfaces, radiation exchange in enclosures composed of diffuse gray surfaces and in enclosures having some specularly reflecting surfaces, and radiation exchange between nondiffuse nongray surfaces. The use of the Monte Carlo technique in solving radiant-exchange problems and problems of radiative transfer through absorbing-emitting media is explained.

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Aircraft-skin Infrared Radiation Characteristics Modeling and Analysis

TL;DR: In this paper, an infrared signature model for solving the complex geometry and structure of a fighter is proposed with the reverse Monte Carlo (RMC) method, based on which the aircraft components that emit the most IR can be identified; and the cooling effects of the main aircraft components on IR intensity are investigated.
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Thermal radiation and the second law

TL;DR: In this article, the fundamental concepts about second law analysis of thermal radiation are collected and interrelated, and grey body radiation is treated when treating with non-black body radiation, due to its relevance in engineering applications.
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The thermal conductivity mechanism of sewage sludge ash lightweight materials

TL;DR: In this article, the thermal conductivity of sludge ash (SSA) was investigated and the porosity, irregular particles and lightweight properties of SSA led to a thermal conductivities of 0.0763-0.2474 W/m K.
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Influence of Flow Structure on Compound Angled Film Cooling Effectiveness and Heat Transfer

TL;DR: In this paper, the authors used high-resolution stereoscopic particle image velocimetry (SVO) to obtain three-dimensional velocity measurements of compound angled film cooling injection.
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Simulation of temperature distribution in crystals grown by Czochralski method

TL;DR: In this article, a computer simulation model has been developed for prediction of the temperature distribution and the position of the melt-crystal interface for crystals grown by the Czochralski method.
References
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Journal ArticleDOI

The Monte Carlo method.

TL;DR: In this paper, the authors present a statistical approach to the study of integro-differential equations that occur in various branches of the natural sciences, such as biology and chemistry.
Book

The scattering of electromagnetic waves from rough surfaces

TL;DR: The scattering of electromagnetic waves from rough surfaces PDF is available at the online library of the University of Southern California as mentioned in this paper, where a complete collection of electromagnetic wave from rough surface books can be found.